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3cef992e36
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3cef992e36 | |
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eeacceb667 | |
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802166ba23 | |
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4bc60c3f1b | |
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e7e6d7cb9d | |
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65bbcf85ad | |
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79098d3546 | |
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50fc88aae1 |
14
audio.go
14
audio.go
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@ -22,7 +22,7 @@ var (
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audioLogger zerolog.Logger
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audioLogger zerolog.Logger
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currentAudioTrack *webrtc.TrackLocalStaticSample
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currentAudioTrack *webrtc.TrackLocalStaticSample
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inputTrackHandling atomic.Bool
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inputTrackHandling atomic.Bool
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useUSBForAudioOutput bool
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useUSBForAudioOutput atomic.Bool
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audioOutputEnabled atomic.Bool
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audioOutputEnabled atomic.Bool
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audioInputEnabled atomic.Bool
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audioInputEnabled atomic.Bool
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)
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)
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@ -32,7 +32,7 @@ func initAudio() {
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// Load audio output source from config
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// Load audio output source from config
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ensureConfigLoaded()
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ensureConfigLoaded()
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useUSBForAudioOutput = config.AudioOutputSource == "usb"
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useUSBForAudioOutput.Store(config.AudioOutputSource == "usb")
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// Enable both by default
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// Enable both by default
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audioOutputEnabled.Store(true)
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audioOutputEnabled.Store(true)
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@ -57,7 +57,7 @@ func startAudio() error {
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// Start output audio if not running and enabled
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// Start output audio if not running and enabled
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if outputSource == nil && audioOutputEnabled.Load() {
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if outputSource == nil && audioOutputEnabled.Load() {
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alsaDevice := "hw:0,0" // HDMI
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alsaDevice := "hw:0,0" // HDMI
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if useUSBForAudioOutput {
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if useUSBForAudioOutput.Load() {
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alsaDevice = "hw:1,0" // USB
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alsaDevice = "hw:1,0" // USB
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}
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}
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@ -167,16 +167,17 @@ func SetAudioOutputSource(useUSB bool) error {
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audioMutex.Lock()
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audioMutex.Lock()
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defer audioMutex.Unlock()
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defer audioMutex.Unlock()
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if useUSBForAudioOutput == useUSB {
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if useUSBForAudioOutput.Load() == useUSB {
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return nil
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return nil
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}
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}
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audioLogger.Info().
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audioLogger.Info().
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Bool("old_usb", useUSBForAudioOutput).
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Bool("old_usb", useUSBForAudioOutput.Load()).
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Bool("new_usb", useUSB).
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Bool("new_usb", useUSB).
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Msg("Switching audio output source")
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Msg("Switching audio output source")
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useUSBForAudioOutput = useUSB
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oldValue := useUSBForAudioOutput.Load()
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useUSBForAudioOutput.Store(useUSB)
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ensureConfigLoaded()
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ensureConfigLoaded()
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if useUSB {
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if useUSB {
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@ -186,6 +187,7 @@ func SetAudioOutputSource(useUSB bool) error {
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}
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}
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if err := SaveConfig(); err != nil {
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if err := SaveConfig(); err != nil {
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audioLogger.Error().Err(err).Msg("Failed to save config")
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audioLogger.Error().Err(err).Msg("Failed to save config")
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useUSBForAudioOutput.Store(oldValue)
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return err
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return err
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}
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}
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@ -305,11 +305,11 @@ func wakeDisplay(force bool, reason string) {
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displayLogger.Warn().Err(err).Msg("failed to wake display")
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displayLogger.Warn().Err(err).Msg("failed to wake display")
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}
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}
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if config.DisplayDimAfterSec != 0 {
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if config.DisplayDimAfterSec != 0 && dimTicker != nil {
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dimTicker.Reset(time.Duration(config.DisplayDimAfterSec) * time.Second)
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dimTicker.Reset(time.Duration(config.DisplayDimAfterSec) * time.Second)
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}
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}
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if config.DisplayOffAfterSec != 0 {
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if config.DisplayOffAfterSec != 0 && offTicker != nil {
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offTicker.Reset(time.Duration(config.DisplayOffAfterSec) * time.Second)
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offTicker.Reset(time.Duration(config.DisplayOffAfterSec) * time.Second)
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}
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}
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backlightState = 0
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backlightState = 0
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@ -20,7 +20,8 @@ type OutputRelay struct {
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cancel context.CancelFunc
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cancel context.CancelFunc
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logger zerolog.Logger
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logger zerolog.Logger
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running atomic.Bool
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running atomic.Bool
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sample media.Sample // Reusable sample for zero-allocation hot path
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sample media.Sample
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stopped chan struct{}
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// Stats (Uint32: overflows after 2.7 years @ 50fps, faster atomics on 32-bit ARM)
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// Stats (Uint32: overflows after 2.7 years @ 50fps, faster atomics on 32-bit ARM)
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framesRelayed atomic.Uint32
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framesRelayed atomic.Uint32
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@ -38,8 +39,9 @@ func NewOutputRelay(source AudioSource, audioTrack *webrtc.TrackLocalStaticSampl
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ctx: ctx,
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ctx: ctx,
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cancel: cancel,
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cancel: cancel,
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logger: logger,
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logger: logger,
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stopped: make(chan struct{}),
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sample: media.Sample{
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sample: media.Sample{
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Duration: 20 * time.Millisecond, // Constant for all Opus frames
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Duration: 20 * time.Millisecond,
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},
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},
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}
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}
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}
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}
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@ -55,13 +57,15 @@ func (r *OutputRelay) Start() error {
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return nil
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return nil
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}
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}
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// Stop stops the relay
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// Stop stops the relay and waits for goroutine to exit
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func (r *OutputRelay) Stop() {
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func (r *OutputRelay) Stop() {
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if !r.running.Swap(false) {
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if !r.running.Swap(false) {
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return
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return
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}
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}
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r.cancel()
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r.cancel()
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<-r.stopped
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r.logger.Debug().
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r.logger.Debug().
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Uint32("frames_relayed", r.framesRelayed.Load()).
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Uint32("frames_relayed", r.framesRelayed.Load()).
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Uint32("frames_dropped", r.framesDropped.Load()).
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Uint32("frames_dropped", r.framesDropped.Load()).
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@ -70,6 +74,8 @@ func (r *OutputRelay) Stop() {
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// relayLoop continuously reads from audio source and writes to WebRTC
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// relayLoop continuously reads from audio source and writes to WebRTC
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func (r *OutputRelay) relayLoop() {
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func (r *OutputRelay) relayLoop() {
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defer close(r.stopped)
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const reconnectDelay = 1 * time.Second
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const reconnectDelay = 1 * time.Second
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for r.running.Load() {
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for r.running.Load() {
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10
jsonrpc.go
10
jsonrpc.go
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@ -899,7 +899,7 @@ func updateUsbRelatedConfig(wasAudioEnabled bool) error {
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if config.UsbDevices != nil && !config.UsbDevices.Audio && config.AudioOutputSource == "usb" {
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if config.UsbDevices != nil && !config.UsbDevices.Audio && config.AudioOutputSource == "usb" {
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audioMutex.Lock()
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audioMutex.Lock()
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config.AudioOutputSource = "hdmi"
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config.AudioOutputSource = "hdmi"
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useUSBForAudioOutput = false
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useUSBForAudioOutput.Store(false)
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audioSourceChanged = true
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audioSourceChanged = true
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audioMutex.Unlock()
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audioMutex.Unlock()
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}
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}
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@ -908,7 +908,7 @@ func updateUsbRelatedConfig(wasAudioEnabled bool) error {
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if config.UsbDevices != nil && config.UsbDevices.Audio && !wasAudioEnabled {
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if config.UsbDevices != nil && config.UsbDevices.Audio && !wasAudioEnabled {
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audioMutex.Lock()
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audioMutex.Lock()
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config.AudioOutputSource = "usb"
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config.AudioOutputSource = "usb"
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useUSBForAudioOutput = true
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useUSBForAudioOutput.Store(true)
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audioSourceChanged = true
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audioSourceChanged = true
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audioMutex.Unlock()
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audioMutex.Unlock()
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}
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}
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@ -970,8 +970,10 @@ func rpcSetUsbDeviceState(device string, enabled bool) error {
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}
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}
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func rpcGetAudioOutputSource() (string, error) {
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func rpcGetAudioOutputSource() (string, error) {
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ensureConfigLoaded()
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if useUSBForAudioOutput.Load() {
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return config.AudioOutputSource, nil
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return "usb", nil
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}
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return "hdmi", nil
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}
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}
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func rpcSetAudioOutputSource(source string) error {
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func rpcSetAudioOutputSource(source string) error {
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@ -111,6 +111,7 @@ type Client struct {
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var (
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var (
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defaultTimerDuration = 1 * time.Second
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defaultTimerDuration = 1 * time.Second
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defaultLinkUpTimeout = 30 * time.Second
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defaultLinkUpTimeout = 30 * time.Second
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defaultDHCPTimeout = 5 * time.Second // DHCP request timeout (not link up timeout)
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maxRenewalAttemptDuration = 2 * time.Hour
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maxRenewalAttemptDuration = 2 * time.Hour
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)
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)
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@ -125,11 +126,11 @@ func NewClient(ctx context.Context, ifaces []string, c *Config, l *zerolog.Logge
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}
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}
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if cfg.Timeout == 0 {
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if cfg.Timeout == 0 {
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cfg.Timeout = defaultLinkUpTimeout
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cfg.Timeout = defaultDHCPTimeout
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}
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}
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if cfg.Retries == 0 {
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if cfg.Retries == 0 {
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cfg.Retries = 3
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cfg.Retries = 4
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}
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}
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return &Client{
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return &Client{
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@ -153,9 +154,15 @@ func NewClient(ctx context.Context, ifaces []string, c *Config, l *zerolog.Logge
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}, nil
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}, nil
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}
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}
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func resetTimer(t *time.Timer, l *zerolog.Logger) {
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func resetTimer(t *time.Timer, attempt int, l *zerolog.Logger) {
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l.Debug().Dur("delay", defaultTimerDuration).Msg("will retry later")
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// Exponential backoff: 1s, 2s, 4s, 8s, max 8s
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t.Reset(defaultTimerDuration)
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backoffAttempt := attempt
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if backoffAttempt > 3 {
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backoffAttempt = 3
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}
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delay := time.Duration(1<<backoffAttempt) * time.Second
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l.Debug().Dur("delay", delay).Int("attempt", attempt).Msg("will retry later")
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t.Reset(delay)
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}
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}
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func getRenewalTime(lease *Lease) time.Duration {
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func getRenewalTime(lease *Lease) time.Duration {
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@ -168,12 +175,14 @@ func getRenewalTime(lease *Lease) time.Duration {
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func (c *Client) requestLoop(t *time.Timer, family int, ifname string) {
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func (c *Client) requestLoop(t *time.Timer, family int, ifname string) {
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l := c.l.With().Str("interface", ifname).Int("family", family).Logger()
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l := c.l.With().Str("interface", ifname).Int("family", family).Logger()
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attempt := 0
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for range t.C {
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for range t.C {
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l.Info().Msg("requesting lease")
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l.Info().Int("attempt", attempt).Msg("requesting lease")
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if _, err := c.ensureInterfaceUp(ifname); err != nil {
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if _, err := c.ensureInterfaceUp(ifname); err != nil {
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l.Error().Err(err).Msg("failed to ensure interface up")
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l.Error().Err(err).Int("attempt", attempt).Msg("failed to ensure interface up")
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resetTimer(t, c.l)
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resetTimer(t, attempt, c.l)
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attempt++
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continue
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continue
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}
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}
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@ -188,11 +197,14 @@ func (c *Client) requestLoop(t *time.Timer, family int, ifname string) {
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lease, err = c.requestLease6(ifname)
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lease, err = c.requestLease6(ifname)
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}
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}
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if err != nil {
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if err != nil {
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l.Error().Err(err).Msg("failed to request lease")
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l.Error().Err(err).Int("attempt", attempt).Msg("failed to request lease")
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resetTimer(t, c.l)
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resetTimer(t, attempt, c.l)
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attempt++
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continue
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continue
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}
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}
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// Successfully obtained lease, reset attempt counter
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attempt = 0
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c.handleLeaseChange(lease)
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c.handleLeaseChange(lease)
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nextRenewal := getRenewalTime(lease)
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nextRenewal := getRenewalTime(lease)
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@ -46,10 +46,10 @@ export default function SettingsHardwareRoute() {
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}
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}
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setBacklightSettings(settings);
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setBacklightSettings(settings);
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handleBacklightSettingsSave();
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handleBacklightSettingsSave(settings);
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};
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};
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const handleBacklightSettingsSave = () => {
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const handleBacklightSettingsSave = (backlightSettings: BacklightSettings) => {
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send("setBacklightSettings", { params: backlightSettings }, (resp: JsonRpcResponse) => {
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send("setBacklightSettings", { params: backlightSettings }, (resp: JsonRpcResponse) => {
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if ("error" in resp) {
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if ("error" in resp) {
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notifications.error(
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notifications.error(
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@ -81,7 +81,7 @@ export default function SettingsHardwareRoute() {
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const duration = enabled ? 90 : -1;
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const duration = enabled ? 90 : -1;
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send("setVideoSleepMode", { duration }, (resp: JsonRpcResponse) => {
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send("setVideoSleepMode", { duration }, (resp: JsonRpcResponse) => {
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if ("error" in resp) {
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if ("error" in resp) {
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notifications.error(m.hardware_power_saving_failed_error({ error: resp.error.data ||m.unknown_error() }));
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notifications.error(m.hardware_power_saving_failed_error({ error: resp.error.data || m.unknown_error() }));
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setPowerSavingEnabled(!enabled); // Attempt to revert on error
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setPowerSavingEnabled(!enabled); // Attempt to revert on error
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return;
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return;
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}
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}
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